Literature DB >> 16549421

Meiotic spindle configuration is differentially influenced by FSH and epidermal growth factor during in vitro maturation of mouse oocytes.

G Rossi1, G Macchiarelli, M G Palmerini, R Canipari, S Cecconi.   

Abstract

BACKGROUND: To ascertain whether different hormonal treatment protocols could affect metaphase II (MII) spindle morphology, meiotic spindle organization was detected in prepubertal mouse oocytes matured under conditions allowing spontaneous, FSH- or epidermal growth factor (EGF)-dependent meiotic maturation.
METHODS: Oocyte-cumulus complexes (OCCs) were matured either spontaneously (control; n=270) or in the presence of hypoxanthine (Hx) plus FSH (n=400) or EGF (n=370). Spindles were detected by immunofluorescence analysis. In vivo ovulated (IVO) oocytes were processed similarly.
RESULTS: IVO oocytes displayed spindles underlying the oolemma and with focused poles marked by spots of gamma-tubulin, whereas the majority (89%) of control oocytes had barrel-shaped spindles, positioned away from the oolemma, and with gamma-tubulin distributed along microtubules. Similar configuration/localization was found in 85% of the oocytes matured in vitro in the presence of Hx and FSH. In the presence of Hx-EGF, 35% of the oocytes showed spindles with an IVO-like configuration, although gamma-tubulin was homogeneously distributed throughout microtubules. Independently of spindle shape, 52% of EGF-stimulated oocytes had spindles positioned near the oolemma, in comparison to just 24% of FSH-treated and 13% of control oocytes.
CONCLUSIONS: These results indicate that FSH and EGF can differently affect meiotic spindle morphology, and that EGF might be a stronger contributor than FSH to the acquisition of oocyte competence.

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Year:  2006        PMID: 16549421     DOI: 10.1093/humrep/del074

Source DB:  PubMed          Journal:  Hum Reprod        ISSN: 0268-1161            Impact factor:   6.918


  7 in total

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Authors:  Ling Zhang; Jie Li; Ping Su; Chengliang Xiong
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2.  Repeated ovarian stimulation does not affect the expression level of proteins involved in cell cycle control in mouse ovaries and fallopian tubes.

Authors:  Gianluca Di Luigi; Gianna Rossi; Annalisa Castellucci; Pietro Leocata; Gaspare Carta; Rita Canipari; Stefania Annarita Nottola; Sandra Cecconi
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3.  Follicular fluid protein content (FSH, LH, PG4, E2 and AMH) and polar body aneuploidy.

Authors:  I Hammoud; F Vialard; M Bergere; M Albert; D Molina Gomes; M Adler; L Malagrida; M Bailly; R Wainer; J Selva
Journal:  J Assist Reprod Genet       Date:  2012-08-14       Impact factor: 3.412

4.  Disruption of bidirectional oocyte-cumulus paracrine signaling during in vitro maturation reduces subsequent mouse oocyte developmental competence.

Authors:  Christine X Yeo; Robert B Gilchrist; Michelle Lane
Journal:  Biol Reprod       Date:  2009-01-14       Impact factor: 4.285

5.  Ultrastructure of immature and mature human oocytes after cryotop vitrification.

Authors:  Maria Grazia Palmerini; Monica Antinori; Marta Maione; Fabrizio Cerusico; Caterina Versaci; Stefania Annarita Nottola; Guido Macchiarelli; Mohammad Ali Khalili; Severino Antinori
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6.  NPR2 is involved in FSH-mediated mouse oocyte meiotic resumption.

Authors:  Lei Yang; Qiang Wei; Wei Li; Qihui Xi; Xiaoe Zhao; Baohua Ma
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Review 7.  Chromosome Segregation in the Oocyte: What Goes Wrong during Aging.

Authors:  Marta Wasielak-Politowska; Paweł Kordowitzki
Journal:  Int J Mol Sci       Date:  2022-03-07       Impact factor: 5.923

  7 in total

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